McDaniel Kelly A, Blood Anna R, Smith Gavin C, Jui Nathan T
Department of Chemistry and Winship Cancer Institute, Emory University, Atlanta, Georgia 30322, United States.
ACS Catal. 2021 May 7;11(9):4968-4972. doi: 10.1021/acscatal.1c00732. Epub 2021 Apr 8.
The dearomative cyclization of linear amides to complex spirocyclic butyrolactams has been enabled by photoredox catalysis through a reductive radical-polar crossover mechanism. This mechanism operates with precision on unactivated aromatic substrates to give a wide range of 1,4-hydroalkylation products. This method utilizes a simple organic catalyst/reductant pair to deliver products in a highly flexible manner with respect to substitution, and the products can be further functionalized under simple conditions to afford a collection of motifs. The mechanistic analysis performed here outlines the salient features of this strategy, which were applied to prepare a collection of complex scaffolds including the anticonvulsive agent gabapentin.
通过光氧化还原催化,经由还原自由基-极性交叉机制,实现了线性酰胺向复杂螺环丁内酰胺的脱芳构化环化反应。该机制能精准作用于未活化的芳族底物,生成多种1,4-氢烷基化产物。此方法利用一对简单的有机催化剂/还原剂,在取代方面以高度灵活的方式生成产物,且产物可在简单条件下进一步官能化,以提供一系列结构单元。此处进行的机理分析概述了该策略的显著特征,该策略被用于制备包括抗惊厥药加巴喷丁在内的一系列复杂骨架。